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The Potential of Direct Contact Membrane Distillation for Industrial Textile Wastewater Treatment Using PVDF-Cloisite 15A Nanocomposite Membrane

机译:PVDF-Cloisite 15A纳米复合膜直接接触膜蒸馏在工业纺织品废水处理中的潜力

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摘要

This work demonstrates the feasibility of employing direct contact membrane distillation (DCMD) for treating industrial textile wastewater for clean water production. Experimental results showed that the in-house fabricated polyvinylidene fluoride-Cloisite 15A polymer–inorganic nanocomposite membrane is robust and able to treat the industrial effluent by reducing at least 89% of the initial values of the water quality parameters measured. However, the membrane permeate flux was reported to decline almost 50% in the first few hours of the 40-h treatment process before reaching water flux of 13–22 kg/m2 h. It is believed that the initial flux decline is mainly caused by the foulants accumulated on the membrane outer surface that increases mass transfer resistance of water molecules and reduces water productivity. With respect to separation characteristics, the DCMD process has shown better performance for COD and color removal in comparison to the other commonly used pressure-driven membrane processes. Further improvement on the membrane surface properties is necessary to reduce fouling propensity and pore wetting caused by the surfactants and other foulants in the textile wastewater. This is of particular importance for long-term operation of DCMD process.
机译:这项工作证明了采用直接接触膜蒸馏(DCMD)处理工业纺织品废水以生产净水的可行性。实验结果表明,自制的聚偏二氟乙烯-氯亚锡15A聚合物-无机纳米复合膜坚固耐用,能够通过减少至少89%的水质参数初始值来处理工业废水。然而,据报道,在40 h处理过程的最初几个小时中,膜渗透通量下降了近50%,然后才达到13-22 kg / m2 h的水通量。可以认为,初始通量下降主要是由积聚在膜外表面上的污垢引起的,污垢增加了水分子的传质阻力并降低了水生产率。关于分离特性,与其他常用的压力驱动膜工艺相比,DCMD工艺表现出了更好的COD和脱色性能。为了降低由纺织品废水中的表面活性剂和其他污垢引起的结垢倾向和孔润湿,需要进一步改善膜表面性能。这对于DCMD工艺的长期运行特别重要。

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